• Title/Summary/Keyword: 표면수식

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Quartz Crystal Microbalance Modified by a Novel Vapor Diffused Molecular Assembly Technique and Measurement of Chiral Mandelic Acid (기상확산 자기조립화법에 QCM수식과 Madelic Acid 키랄물질 측정)

  • Kim, JongMin;Kim, SeungJin;Woo, SunYoung;Jang, SukHee;Kim, Woo-Sik;Chang, SangMok
    • Korean Chemical Engineering Research
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    • v.48 no.5
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    • pp.574-582
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    • 2010
  • In this study, the possibility of a quartz crystal micro-balance(QCM) modification of crystallization of L-Penicillamine and D-Penicillamine with a Vapor Diffused Molecular Assembly Technique and its application to the R-(-)-Mandelic acid and S-(+)- Mandelic acid measurement was investigated. The 3-dimensional structures of L-Penicillamine and D-Penicillamine on the surface of QCM were verified to be different from each other through QCM and AFM analyses. The D-Penicillamine modified QCM had specific recognition to the R-(-)-Mandelic acid, but L-Penicillamine modified QCM had no specificity to the R-(-)-Mandelic acid and S-(+)- Mandelic acid. From these results, it was known that the QCM could be modified with various selective meterials via VDMA, and the chiral isomer such as a Mandelic acid isomer could be detected by using a modified QCM.

Immobilization of Proteins on Silicon Surfaces Using Chemical and Electrochemical Reactions of Nitrobenzenediazonium Cations (나이트로벤젠다이아조늄 양이온의 화학 및 전기화학 반응을 이용한 실리콘 표면상으로의 단백질 고정)

  • Kim, Kyu-Won;Haque, Al-Monsur Jiaul;Kang, Hyeon-Ju
    • Journal of the Korean Electrochemical Society
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    • v.13 no.1
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    • pp.70-74
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    • 2010
  • The immobilization of proteins on silicon surfaces using electrochemical reaction has been studied. Chemical deposition of nitrobenzendiazonium (NiBD) cations is employed to modify silicon surfaces. Electrochemical reduction of nitro-group to primary amine-group have been conducted on the modified surfaces to activate silicon surfaces for the protein immobilization. Attachment of gold nanoparticles was used to prove the reduction. The current method was applied to selective activation of a silicon nanowire and immobilize proteins on the selected nanowire. It has been demonstrated that the use of chemical and electrochemical reaction NiBD is efficient for the selective immobilization of proteins on silicon nanowire surfaces.

Surface Mmodification of Poly(DL-lactide-co-glycolide) Nanoparticle (Poly(DL-lactide-co-glycolide) 나노입자의 표면 수식)

  • Oh, Yu-Mi;Jung, Taek-Kyu;Chi, Sang-Cheol;Shin, Byung-Cheol
    • Journal of the Korean Chemical Society
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    • v.47 no.6
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    • pp.601-607
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    • 2003
  • We studied on preparation of nanoparticles modified surface using biodegradable polymer, poly(DL-lactide-co-glycolide) (PLGA). Two kinds of PLGA nanoparticles were prepared by a spontaneous emulsification solvent diffusion (SESD) method using cetyltrimethylammonium chloride (CTAC) and tetradecyltrimethylammonium bromide (TTAB) as a cationic surfactant and polyethylene glycol-block-polypropylene glycol copolymer (Lutrol F68) as a nonionic surfactant. Model protein was coated on the surface of nanoparticles by the ionic complexation. The model protein was that influenza vaccine ($H_3N_2,\;H_1N_1$, B strain) labeled with NHS-fluorescein. The sizes of cationic nanoparticles were 140-160 nm and the surface charges were 50-60 mV. The sizes of nonionic nanoprticles were 80-90 nm and the surface charge was -10 mV. After coating vaccine on the surface of nanoparticles, the sizes of cationic nanoparticles were increased to 380-400 nm and the size of nonionic nanoparticles was not increased. The amount of coated vaccine on the cationic nanoparticles was 22.73 ${\mu}g$/mg.

Calculation of Surface Tension of Liquid Alloys Using Thermodynamic Software (열역학 소프트웨어를 이용한 용융 합금의 표면 장력 계산)

  • Gang, Yun-Bae
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2015.11a
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    • pp.213-214
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    • 2015
  • 용융 합금의 표면 장력은 도금, 용접등 금속 제조 공정중 큰 영향을 미치는 재료의 물성 중 하나이다. 표면 장력의 측정을 위해 다양한 방법이 개발 되었으며 많은 합금계에 대해 표면 장력값이 온도와 조성의 변화에 대해 알려져 있다. 그럼에도 불구하고 실험 측정의 어려움, 실용적인 다원계 합금에서의 표면 장력 측정치의 부족으로 인해 전술한 금속 제조 공정에서 나타나는 현상에 대한 해석에 사용하기에 아직 해결해야 할 부분들이 많이 있다. 본 연구에서는 표면 장력이 합금의 Gibbs free energy의 한 부분으로 기술되는 열역학 원리 및 표면 장력이 Gibbs energy 수식 내 표면적에 대응하는 포텐셜 함수로 얻을수 있다는 Pajarre등의 제안에 근거하여 용융합금의 표면 장력을 계산하는 방법을 제시한다. 다양한 열역학 성질과 상태도를 계산하기 위해 개발된 열역학 소프트웨어 및 데이터베이스를 활용하여 2원계-다원계 용융 합금의 표면장력을 계산하고 이를 알려진 실험 자료와 비교하였다. 철강 제품의 표면 도금에 사용되는 용융 아연 합금의 표면 장력을 전술한 방법을 통해 예측하고 그 결과를 토의한다.

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최근의 수직전계계산법 (1)

  • 박중근
    • 전기의세계
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    • v.34 no.5
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    • pp.299-304
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    • 1985
  • 수직전계 계산방법의 정밀도 및 근사과도의 평가의 기준이 되며 전하중첩법의 전위 및 전계 소계수식에 형태가 남아있다. 또한 영상전하가 전하중첩 및 표면전하법 등에서 이용되고 있는 것이 특징이다.

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Determination of Cadmium(II) Ion Using the Nafion-Ethylenediamine-Modified Glassy Carbon Electrode (Nafion-Ethylenediamine이 수식된 유리탄소전극에 의한 Cd(II) 이온의 정량)

  • Kim, Jin Ah;Ko, Young Chun;Park, Chan Ju;Park, Byung Ho;Chung, Keun Ho
    • Analytical Science and Technology
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    • v.14 no.2
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    • pp.123-130
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    • 2001
  • Determination of cadmium(II) ion with a perfluorinated sulfonated polymer-ethylenediamine(nafion-en) modified glassy carbon electrode was studied. It was based on the chemical reactivity of an immobilized layer(nafion-en) to yield complex $[Cd(en)_2]^{2+}$. The reduction peak potential by differential pulse voltammetry(DPV) was observed at $-0.780({\pm}0.005)V$ vs. As/AgCl. The linear calibration curve was obtained in cadmium(II) ion concentration range $5.0{\times}10^{-7}-2.0{\times}10^{-5}M$, and the detection limit(3s) was $2.20{\times}10^{-7}M$. The detection limit of nafion-en modified glassy carbon electrode has been shown about 14 higher sensitivity than a bare glassy carbon electrode.

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Dispersion of Multiwalled Carbon Nanotubes by Solution Plasma (솔루션 플라즈마에 의한 탄소나노튜브 분산처리)

  • Gang, Jun;Lee, Myeong-Hun
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2014.11a
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    • pp.291-292
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    • 2014
  • 최근 CNT의 우수한 물리적 성질을 고분자 복합재료의 필러 등으로 이용하고자, CNT를 용액 중에 고분산 시키는 방법에 관한 연구가 많이 이루어지고 있다. 본 연구에서는 용액 중 플라즈마에 의한 방법에 의해 매우 저 농도의 산용액 중에서 CNT표면에 친수화 작용기를 수식하는데 성공하였으며, 이로 인하여 CNT가 순수 중에서 장시간 분산상태를 유지할 수 있음을 확인 할 수 있었다.

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